In photometry, luminous intensity is a measure of the wavelength-weighted power emitted by a light source in a particular direction per unit solid angle, based on the luminosity function, a standardized model of the sensitivity of the human eye. The SI unit of luminous intensity is the candela (cd), an SI base unit.
Photometry deals with the measurement of visible light as perceived by human eyes. The human eye can only see light in the visible spectrum and has different sensitivities to light of different wavelengths within the spectrum. When adapted for bright conditions (photopic vision), the eye is most sensitive to greenish-yellow light at 555 nm. Light with the same radiant intensity at other wavelengths has a lower luminous intensity. The curve which measures the response of the human eye to light is a defined standard, known as the luminosity function. This curve, denoted or , is based on an average of widely differing experimental data from scientists using different measurement techniques. For instance, the measured responses of the eye to violet light varied by a factor of ten.
Luminous intensity should not be confused with another photometric unit, luminous flux, which is the total perceived power emitted in all directions. Luminous intensity is the perceived power per unit solid angle. Luminous intensity is also not the same as the radiant intensity, the corresponding objective physical quantity used in the measurement science of radiometry.
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Like other SI base units, the candela has an operational definition—it is defined by the description of a physical process that will produce one candela of luminous intensity. By definition, if one constructs a light source that emits monochromatic green light with a frequency of 540 THz, and that has a radiant intensity of 1/683 watts per steradian in a given direction, that light source will emit one candela in the specified direction.[1]
The frequency of light used in the definition corresponds to a wavelength of 555 nm, which is near the peak of the eye's response to light. If the source emitted uniformly in all directions, the total radiant flux would be about 18.40 mW, since there are 4π steradians in a sphere. A typical candle produces very roughly one candela of luminous intensity.
In 1881, Jules Violle proposed the Violle as a unit of luminous intensity, and it was notable as the first unit of light intensity that did not depend on the properties of a particular lamp. It was superseded by the candela in 1946.
The luminous intensity for monochromatic light of a particular wavelength is given by
where
If more than one wavelength is present (as is usually the case), one must sum or integrate over the spectrum of wavelengths present to get the luminous intensity:
Quantity | Symbol | SI unit | Abbr. | Notes | ||||
---|---|---|---|---|---|---|---|---|
Luminous energy | Qv | lumen second | lm·s | units are sometimes called talbots | ||||
Luminous flux | F | lumen (= cd·sr) | lm | also called luminous power | ||||
Luminous intensity | Iv | candela (= lm/sr) | cd | an SI base unit | ||||
Luminance | Lv | candela per square metre | cd/m2 | units are sometimes called nits | ||||
Illuminance | Ev | lux (= lm/m2) | lx | Used for light incident on a surface | ||||
Luminous emittance | Mv | lux (= lm/m2) | lx | Used for light emitted from a surface | ||||
Luminous efficacy | lumen per watt | lm/W | ratio of luminous flux to radiant flux | |||||
SI • Photometry |